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Babalola, B. J.

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Date: 2020/10/03
Language: en
Type: Text
Identifier: tut:6667
Description: In this study, effect of mechanical milling on the mechanical, dry sliding wear and impact response of spark plasma sintered Ni-17Cr6.5Co1.2Mo6Al4W7.6Ta superalloy has been investigated. Two nickel-ba ... More
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Date: 2020/08/15
Language: en
Type: Text
Identifier: tut:5833
Description: Mechanical properties of grade 1 commercially pure titanium (CP–Ti) are characterized by a good combination of strength and ductility at elevated temperatures. CP-Ti mechanical properties at room and ... More
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Date: 2020/01/11
Language: en
Type: Text
Identifier: tut:5591
Description: In this paper, the effect of nanocrystalline nickel powder developed via high-energy ball milling process and the addition of Co, Mo, Ta, and Al on the isothermal oxidation behavior of Ni–17Cr binary ... More
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Date: 2019/12/26
Language: en
Type: Text
Identifier: tut:6666
Description: Powder metallurgy has gained relevance particularly in processing complex components widely used in extreme service environments. With the huge success of powder metallurgy and rising technological de ... More
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Date: 2019/11/09
Language: en
Type: Text
Identifier: tut:5100
Description: Titanium alloys are ideally suited for advanced aerospace structures and industrial applications because of the combination of high strength, low density, good toughness, stiffness, and good corrosion ... More
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Date: 2019/11/09
Language: en
Type: Text
Identifier: tut:5104
Description: Abstract. Titanium is used extensively in various engineering applications as a result of its unique physical, chemical and mechanical properties. However, the difficulty encountered in fabricating a ... More
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Date: 2019/11/09
Language: en
Type: Text
Identifier: tut:5105
Description: Sintering temperature is essential towards attaining desired densification and formation of phases which in turn influences the microstructure and properties of a material. In this study, the densific ... More
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Date: 2019/09/03
Language: en
Type: Text
Identifier: tut:5664
Description: Titanium alloys with varying amounts of nickel additions (2, 6 and 10 wt%) were prepared through the spark plasma sintering technique. The influence of nickel additions on densification, microstructur ... More
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Date: 2019/06/30
Language: en
Type: Text
Identifier: tut:6662
Description: Intermetallic compounds (NiAl) are potential high-temperature structure materials due to their exceptional physical and thermomechanical properties. NiAl offer a wide range of applications which stem ... More
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Date: 2019/05/27
Language: en
Type: Text
Identifier: tut:5688
Description: The availability of lower-cost titanium with unique properties required for engineering applications such as in automobile, aerospace and biomedical has created a renewed interest in titanium and its ... More
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Date: 2019/04/14
Language: en
Type: Text
Identifier: tut:5600
Description: Sintered compacts without further heat treatment were fabricated at 540 °C, 570 °C, 600 °C and 650 °C (below the melting temperature of aluminium) via spark plasma sintering (SPS). Ti and Al in a prop ... More
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Date: 2019/02/05
Language: en
Type: Text
Identifier: tut:5590
Description: Nanocrystalline nickel powder from pure nickel with an initial particle size of 4–7 μm was fabricated using highenergy ball mill technique at different milling parameters. The resulting milled slurrie ... More
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Date: 2019/01/01
Language: en
Type: Text
Identifier: tut:6674
Description: Titanium metal matrix has been extraordinary in engineering applications due to their unique thermo-mechanical properties. With these features, the manner of fabricating them has played a significant ... More
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Date: 2018/11/18
Language: en
Type: Text
Identifier: tut:5658
Description: Spark plasma sintering (SPS) system was used to develop Ni-17%Cr alloys using nickel and chromium as the raw elemental materials. The powders were fabricated at different sintering temperatures rangin ... More
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Date: 2018/03/01
Language: en
Type: Text
Identifier: tut:5589
Description: Spark plasma sintering (SPS) has been widely regarded as an advanced powder consolidation technique which helps in the development of array of engineering materials. Many have been reported in the lit ... More
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